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...− and its application to live cell imaging,Chemical...
来自 : www.x-mol.com/paper/1225009224 发布时间:2021-03-24
A new fluorescent probe, (E)-3-(9-ethyl-9H-carbazol-6-yl)-1-(2-hydroxy-5-methoxyphenyl)prop-2-en-1-one (Probe 1), was synthesized based on the carbazole fluorophore for detecting ClO−. The fluorescent probe exhibited specificity for ClO− in many analytes and excellent anti-interference ability during detection. In addition, the fluorescence intensity at 525 nm illustrated a good linear relationship with the concentration of ClO− in the range of 53.6–107.2 μM and the limit of detection was 0.30 μM. Furthermore, fluorescence imaging results confirmed that Probe 1 can be applied to monitor ClO− in HepG2 cells, which indicated that Probe 1 has large potential for monitoring ClO− in vivo.

中文翻译:

2019年10月16日A carbazole-based fluorescent probe for ultra-fast detection of ClO − and its application to live cell imaging Chemical Papers...A carbazole-based fluorescent probe for ultra-fast detection of ClO − and its application to live cell imaging; Jianbin Chao, Yuexiang Duan, Yongbin Zhang, Fangjun Huo, Caixia Yin, Miao Xu, Ming Li; Chem. Pap.; Chemical Papers; X-MOLA new fluorescent probe, (E)-3-(9-ethyl-9H-carbazol-6-yl)-1-(2-hydroxy-5-methoxyphenyl)prop-2-en-1-one (Probe 1), was synthesized based on the carbazole fluorophore for detecting ClO−. The fluorescent probe exhibited specificity for ClO− in many analytes and excellent anti-interference ability during detection. In addition, the fluorescence intensity at 525 nm illustrated a good linear relationship with the concentration of ClO− in the range of 53.6–107.2 μM and the limit of detection was 0.30 μA carbazole

本文链接: http://fastchem627.immuno-online.com/view-713052.html

发布于 : 2021-03-24 阅读(0)
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